This book introduces a novel Ti-Sb-Te alloy for high-speed and low-power phase-change memory applications, which demonstrates a phase-change mechanism that differs significantly from that of conventional Ge2Sb2Te5 and yields favorable overall performance. Systematic methods, combined with better material characteristics, are used to optimize the material components and device performance. Subsequently, a phase-change memory chip based on the optimized component is successfully fabricated using 40-nm complementary metal-oxide semiconductor technology, which offers a number of advantages in many embedded applications.
| ISBN: | 9789811043819 |
| Publication date: | 12th May 2017 |
| Author: | Min Zhu |
| Publisher: | Springer an imprint of Springer Nature Singapore |
| Format: | Hardback |
| Pagination: | 124 pages |
| Series: | Springer Theses |
| Genres: |
Electronic devices and materials Electronics: circuits and components Condensed matter physics (liquid state and solid state physics) Electronics engineering |
This book introduces a novel Ti-Sb-Te alloy for high-speed and low-power phase-change memory applications, which demonstrates a phase-change mechanism that differs significantly from that of conventional Ge2Sb2Te5 and yields favorable overall performance. Systematic methods, combined with better material characteristics, are used to optimize the material components and device performance. Subsequently, a phase-change memory chip based on the optimized component is successfully fabricated using 40-nm complementary metal-oxide semiconductor technology, which offers a number of advantages in many embedded applications.
Ti-Sb-Te Phase Change Materials features in the following genres: Electronic devices and materials, Electronics: circuits and components, Condensed matter physics (liquid state and solid state physics), Electronics engineering
Ti-Sb-Te Phase Change Materials is available in Hardback
Ti-Sb-Te Phase Change Materials was written by Min Zhu and published by Springer an imprint of Springer Nature Singapore
Ti-Sb-Te Phase Change Materials has 124 pages
Yes it is part of Springer Theses series